Species-specific differences in bumblebee worker body size between different elevations: Implications for pollinator community structure under climate change

Q3 Agricultural and Biological Sciences
Caterina Massa, Janneke Hille Ris Lambers, S. Richman
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引用次数: 0

Abstract

Pollinator populations face growing threats from global climate change, particularly in alpine environments with rapidly rising temperatures. Understanding how bumblebees, critical alpine pollinators, respond to these temperature changes is therefore an important goal. Predicting species’ responses to climate change requires several different approaches, one of which is to compare processes at different elevations, which experience different temperature regimes. Bumblebee body size is linked to fitness through its influence on nutritional requirements and foraging capacity. It is also a highly plastic trait that depends on ecological factors such as temperature. Thus, understanding how body size varies at different elevations may help predict bumblebee fitness under climate change. We collected bumblebee workers from five species in a single growing season, at two distinct elevations in the Swiss Alps. Our study aimed to examine whether body size responses differed among species and across functional traits related to foraging and nesting. Larger body size is thought to confer an advantage under cold conditions; we therefore expected greater body size with elevation, but with species-specific relationships. Contrary to our expectation, not all species were larger at high elevations. Specifically, while two species were significantly larger at high elevation, one (Bombus terrestris) was significantly smaller at high elevation, and two showed no size differences with elevation. Additionally, interspecific variation in body size was greater at low elevations. This suggests a divergence of body size with warming, although local factors may also play a role in shaping functional traits.
不同海拔地区熊蜂工蜂体型的物种特异性差异:气候变化对传粉昆虫群落结构的影响
传粉昆虫种群面临着全球气候变化带来的日益严重的威胁,尤其是在气温迅速升高的高山环境中。因此,了解熊蜂这种重要的高山传粉昆虫如何应对这些温度变化是一个重要目标。预测物种对气候变化的反应需要几种不同的方法,其中之一是比较不同海拔高度的过程,因为不同海拔高度的温度变化不同。大黄蜂的体型通过对营养需求和觅食能力的影响而与体能相关联。它也是一种可塑性很强的性状,取决于温度等生态因素。因此,了解体型在不同海拔地区的变化可能有助于预测熊蜂在气候变化下的适应性。我们在瑞士阿尔卑斯山两个不同海拔地区的一个生长季节中采集了五个物种的熊蜂工蜂。我们的研究旨在考察不同物种以及与觅食和筑巢有关的功能特征对体型的反应是否存在差异。较大的体型被认为在寒冷条件下具有优势;因此,我们预计体型会随着海拔的升高而增大,但这与物种的特定关系有关。与我们的预期相反,并非所有物种在高海拔地区体型都较大。具体来说,虽然有两个物种在高海拔地区体型明显较大,但有一个物种(赤麻叶蜂)在高海拔地区体型明显较小,还有两个物种在高海拔地区体型没有差异。此外,种间体型差异在低海拔地区更大。这表明随着气候变暖,体型会出现分化,尽管当地因素也可能在形成功能特征方面发挥作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Pollination Ecology
Journal of Pollination Ecology Environmental Science-Ecology
CiteScore
1.50
自引率
0.00%
发文量
17
审稿时长
17 weeks
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